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Mitochondria-targeting fluorescent molecules for high efficiency cancer growth inhibition and imaging

Fluorescent mitochondria-accumulating delocalized lipophilic cations (DLCs) for cancer therapy have drawn significant attention in the field of cancer theranostics. One of the most promising fluorescent DLCs, F16, can selectively trigger the apoptosis and necrosis of cancer cells, making it an attra...

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Autores principales: Chen, Hao, Wang, Jing, Feng, Xin, Zhu, Mark, Hoffmann, Simon, Hsu, Alex, Qian, Kun, Huang, Daijuan, Zhao, Feng, Liu, Wei, Zhang, Huimao, Cheng, Zhen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6836573/
https://www.ncbi.nlm.nih.gov/pubmed/31853349
http://dx.doi.org/10.1039/c9sc01410a
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author Chen, Hao
Wang, Jing
Feng, Xin
Zhu, Mark
Hoffmann, Simon
Hsu, Alex
Qian, Kun
Huang, Daijuan
Zhao, Feng
Liu, Wei
Zhang, Huimao
Cheng, Zhen
author_facet Chen, Hao
Wang, Jing
Feng, Xin
Zhu, Mark
Hoffmann, Simon
Hsu, Alex
Qian, Kun
Huang, Daijuan
Zhao, Feng
Liu, Wei
Zhang, Huimao
Cheng, Zhen
author_sort Chen, Hao
collection PubMed
description Fluorescent mitochondria-accumulating delocalized lipophilic cations (DLCs) for cancer therapy have drawn significant attention in the field of cancer theranostics. One of the most promising fluorescent DLCs, F16, can selectively trigger the apoptosis and necrosis of cancer cells, making it an attractive targeted theranostic drug candidate. However, it suffers from low clinical translation potential, largely due to its inefficient anti-cancer activity (IC(50) in the μM range) and poorly understood structure–activity relationship (SAR). In this report, eleven indole-ring substituted F16 derivatives (F16s) were synthesized. Among these derivatives, 5BMF was identified as a highly effective theranostic agent, with in vitro studies showing a low IC(50) of ∼50 nM (to H2228 cells) and high cancer to normal cell selectivity index of 225. In vivo studies revealed that tumors treated with 5BMF were significantly suppressed (almost no growth over the treatment period) compared to the PBS treated control group, and also no obvious toxicity to mice was found. In addition, the tumor imaging capability of 5BMF was demonstrated by in vivo fluorescence imaging. Finally, we report for the first time a proposed SAR for F16 DLCs. Our work lays down a solid foundation for translating 5BMF into a novel and highly promising DLC for cancer theranostics.
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spelling pubmed-68365732019-12-18 Mitochondria-targeting fluorescent molecules for high efficiency cancer growth inhibition and imaging Chen, Hao Wang, Jing Feng, Xin Zhu, Mark Hoffmann, Simon Hsu, Alex Qian, Kun Huang, Daijuan Zhao, Feng Liu, Wei Zhang, Huimao Cheng, Zhen Chem Sci Chemistry Fluorescent mitochondria-accumulating delocalized lipophilic cations (DLCs) for cancer therapy have drawn significant attention in the field of cancer theranostics. One of the most promising fluorescent DLCs, F16, can selectively trigger the apoptosis and necrosis of cancer cells, making it an attractive targeted theranostic drug candidate. However, it suffers from low clinical translation potential, largely due to its inefficient anti-cancer activity (IC(50) in the μM range) and poorly understood structure–activity relationship (SAR). In this report, eleven indole-ring substituted F16 derivatives (F16s) were synthesized. Among these derivatives, 5BMF was identified as a highly effective theranostic agent, with in vitro studies showing a low IC(50) of ∼50 nM (to H2228 cells) and high cancer to normal cell selectivity index of 225. In vivo studies revealed that tumors treated with 5BMF were significantly suppressed (almost no growth over the treatment period) compared to the PBS treated control group, and also no obvious toxicity to mice was found. In addition, the tumor imaging capability of 5BMF was demonstrated by in vivo fluorescence imaging. Finally, we report for the first time a proposed SAR for F16 DLCs. Our work lays down a solid foundation for translating 5BMF into a novel and highly promising DLC for cancer theranostics. Royal Society of Chemistry 2019-07-08 /pmc/articles/PMC6836573/ /pubmed/31853349 http://dx.doi.org/10.1039/c9sc01410a Text en This journal is © The Royal Society of Chemistry 2019 http://creativecommons.org/licenses/by/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution 3.0 Unported Licence (CC BY 3.0)
spellingShingle Chemistry
Chen, Hao
Wang, Jing
Feng, Xin
Zhu, Mark
Hoffmann, Simon
Hsu, Alex
Qian, Kun
Huang, Daijuan
Zhao, Feng
Liu, Wei
Zhang, Huimao
Cheng, Zhen
Mitochondria-targeting fluorescent molecules for high efficiency cancer growth inhibition and imaging
title Mitochondria-targeting fluorescent molecules for high efficiency cancer growth inhibition and imaging
title_full Mitochondria-targeting fluorescent molecules for high efficiency cancer growth inhibition and imaging
title_fullStr Mitochondria-targeting fluorescent molecules for high efficiency cancer growth inhibition and imaging
title_full_unstemmed Mitochondria-targeting fluorescent molecules for high efficiency cancer growth inhibition and imaging
title_short Mitochondria-targeting fluorescent molecules for high efficiency cancer growth inhibition and imaging
title_sort mitochondria-targeting fluorescent molecules for high efficiency cancer growth inhibition and imaging
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6836573/
https://www.ncbi.nlm.nih.gov/pubmed/31853349
http://dx.doi.org/10.1039/c9sc01410a
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